Building waterproof construction equipment

By using a mixing and vacuuming mechanism in the waterproofing construction equipment, air bubbles are quickly dissipated and the waterproofing coating is automatically mixed, solving the problem of low construction efficiency in existing technologies and achieving a time-saving and labor-saving construction effect.

CN224119868UActive Publication Date: 2026-04-14ZHEJIANG GUOFENG GRP
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Current waterproofing projects require static watering to dissipate air bubbles and manual mixing, resulting in low construction efficiency.

Method used

Using building waterproofing construction equipment, combined with a mixing mechanism and a vacuuming mechanism, air bubbles are quickly dissipated and waterproof coating is automatically mixed, reducing waiting time and manual operation.

Benefits of technology

It improved construction efficiency, reduced manual labor consumption, and shortened construction time.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224119868U_ABST
    Figure CN224119868U_ABST
Patent Text Reader

Abstract

The utility model discloses waterproof construction equipment for a building. The waterproof construction equipment comprises a trolley, a charging basket, a discharging switch and a receiving box, the charging basket is arranged on the upper side of the trolley and can be opened and closed; the discharge switch is arranged on the side of the lower end of the barrel; the material receiving box is placed below the discharging switch; the construction equipment further comprises a stirring mechanism, a switching valve and a vacuumizing mechanism, the stirring mechanism comprises a rotating shaft vertically and rotatably connected into the material barrel and blades fixedly connected to the rotating shaft, and the stirring mechanism is used for stirring the waterproof coating in the material barrel; the switching valve is installed on the side face of the upper end of the material barrel and connected with the vacuumizing mechanism, the switching valve has an air exhaust state and an air return state, in the air exhaust state, the material barrel is communicated with the vacuumizing mechanism through the switching valve, and in the air return state, the material barrel is communicated with the atmosphere through the switching valve. According to the building waterproof construction equipment, bubble dissipation is accelerated, stirring of waterproof paint is helped, time and labor are saved, and construction efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of waterproofing engineering technology, and in particular to a building waterproofing construction equipment. Background Technology

[0002] When waterproofing a building, a roller brush is used to evenly apply the waterproofing coating to the walls and floors. Currently, when waterproofing, workers pour dry material and water into a bucket, stir it evenly, and then let it stand for half an hour to allow the air bubbles in the waterproofing coating to dissipate before applying it. During the application process, the waterproofing coating also needs to be stirred manually periodically to ensure that it is mixed evenly.

[0003] In summary, existing waterproofing methods require allowing the water to stand to dissipate air bubbles and require regular manual stirring, which is time-consuming, labor-intensive, and affects construction efficiency. Utility Model Content

[0004] To address the shortcomings of existing waterproofing projects, which are time-consuming and labor-intensive, thus affecting construction efficiency, this invention proposes a building waterproofing construction equipment that accelerates the dissipation of air bubbles and assists in mixing waterproofing coatings, saving time and effort and improving construction efficiency.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A building waterproofing construction device includes a trolley, a material bucket, a material discharge switch, and a material receiving box; the material bucket is located on the upper side of the trolley and can be opened and closed; the material discharge switch is located on the side of the lower end of the material bucket; the material receiving box is placed below the material discharge switch.

[0007] The construction equipment also includes a mixing mechanism, a switching valve, and a vacuuming mechanism. The mixing mechanism includes a rotating shaft that is vertically rotatably connected in the material bucket, and blades that are fixedly connected to the rotating shaft, used to mix the waterproof coating in the material bucket. The switching valve is installed on the side of the upper end of the material bucket and is connected to the vacuuming mechanism. The switching valve has a vacuuming state and a return state. In the vacuuming state, the material bucket is connected to the vacuuming mechanism through the switching valve. In the return state, the material bucket is connected to the atmosphere through the switching valve.

[0008] With the above setup, firstly, the mixing mechanism helps to mix the waterproof coating, saving manual labor; secondly, when mixing the waterproof coating, the vacuuming mechanism evacuates the feed tank, accelerating the dissipation of air bubbles in the waterproof coating, reducing the waiting time for mixing the waterproof coating, and thus speeding up the construction efficiency.

[0009] Furthermore, the material bucket includes a bucket body, a bucket lid, a lower handle, and an upper handle. The bucket lid is sealed and installed on the upper side of the bucket body, the switching valve is installed on the upper side of the bucket body, the upper handle is horizontally fixedly connected to the side of the bucket lid, and the lower handle is horizontally located below the upper handle and connected to the bucket body.

[0010] The above settings facilitate the opening and closing of the material hopper.

[0011] Furthermore, the upper end of the rotating shaft passes through the bucket lid and is rotatably connected to the bucket lid. A transmission groove is provided at the upper end of the rotating shaft. The blade is fixedly connected to the lower end of the rotating shaft. The stirring mechanism also includes a motor, a bracket, and a slider. The motor is located above the rotating shaft. The output shaft of the motor is downward and fixedly connected to a transmission key that matches the transmission groove. The side of the motor is fixedly connected to the slider. The bracket is fixedly connected to the upper side of the trolley, and the slider is slidably connected to the side of the bracket.

[0012] The above settings facilitate the cleaning of construction equipment.

[0013] Furthermore, the switching valve includes a valve body, a valve core, and a handle. One end of the valve body is provided with a first mounting port, and the other end is provided with a second mounting port. One end of the valve body is connected to the barrel body through the first mounting port, and the handle is rotatably connected to the valve body through the second mounting port. An air inlet and an air outlet are respectively provided on the upper and lower sides of the valve body. The air outlet is connected to the vacuuming mechanism. The valve core is rotatably connected in the valve body and has an air passage. One end of the air passage is connected to the mounting port. In the vacuuming state, the other end of the air passage is connected to the air outlet. In the return state, the other end of the air passage is connected to the air inlet. Rotating the handle switches the switching valve state.

[0014] The above settings allow for easy manual switching of the switching valve's status.

[0015] Furthermore, the construction equipment also includes a support platform, which is fixedly connected to the upper side of the trolley, and the material bucket is placed on the upper side of the support platform.

[0016] With the above setup, the material bucket is raised by the support platform, making it easier for the receiving box to receive the waterproof coating.

[0017] Furthermore, the trolley includes a base plate and wheels rotatably connected to the underside of the base plate.

[0018] Furthermore, the construction equipment also includes batteries, which are installed on the trolley to power the mixing and vacuuming mechanisms. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the construction equipment used in an embodiment.

[0020] Figure 2 This is a side view of the construction equipment used in an embodiment.

[0021] Figure 3 This is a schematic diagram of the construction equipment being evacuated during an embodiment.

[0022] Figure 4 This is a schematic diagram of the construction equipment returning air during an embodiment. Detailed Implementation

[0023] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0024] like Figures 1 to 4 A building waterproofing construction device includes a trolley 3, a material bucket 4, a material discharge switch 5, and a material receiving box 6; the material bucket 4 is located on the upper side of the trolley 3 and can be opened and closed; the material discharge switch 5 is located on the side of the lower end of the material bucket 4; the material receiving box 6 is placed below the material discharge switch 5.

[0025] The construction equipment also includes a mixing mechanism 7, a switching valve 8, and a vacuuming mechanism 9. The mixing mechanism 7 includes a rotating shaft 71 vertically rotatably connected in the material bucket 4, and blades 72 fixedly connected to the rotating shaft 71, used to mix the waterproof coating in the material bucket 4. The switching valve 8 is installed on the side of the upper end of the material bucket 4 and is connected to the vacuuming mechanism 9. The switching valve 8 has a vacuuming state and a return state. In the vacuuming state, the material bucket 4 is connected to the vacuuming mechanism 9 through the switching valve 8. In the return state, the material bucket 4 is connected to the atmosphere through the switching valve 8.

[0026] With the above settings, firstly, the mixing mechanism 7 helps to mix the waterproof coating, saving manual labor; secondly, when mixing the waterproof coating, the vacuuming mechanism 9 vacuums the feeding tank 4, accelerating the dissipation of air bubbles in the waterproof coating, reducing the waiting time for mixing the waterproof coating, thereby speeding up the construction efficiency.

[0027] When using the construction equipment of this application, the trolley 3 is pushed to the location where construction is needed, the material hopper 4 is opened, and dry materials and water are poured into the material hopper 4. Then the material hopper 4 is closed, forming a sealed space inside the material hopper 4. At this time, the switching valve 8 is in the vacuum state, and the material hopper 4 is connected to the vacuum mechanism 9 but disconnected from the outside atmosphere. The vacuum mechanism 9 operates, creating a vacuum environment inside the material hopper 4. Figure 3 The mixing mechanism 7 operates at high speed, mixing the internal dry materials and water evenly to form the required waterproof coating. During the mixing process, even if air bubbles form in the waterproof coating, they quickly rise and dissipate. After the mixing mechanism 7 stops operating, there are virtually no air bubbles in the waterproof coating, requiring almost no waiting time. After the switching valve 8 switches to the air return state, as... Figure 4 The material tank 4 is connected to the outside atmosphere but disconnected from the vacuum mechanism 9. Outside air enters the material tank 4 through the switching valve 8. After the air pressure inside the material tank 4 is restored, the discharge switch 5 is opened, and the waterproof coating in the material tank 4 flows out through the discharge switch 5 onto the receiving box 6. After the discharge switch 5 is closed, the worker removes the receiving box 6 and uses a roller brush to pick up the waterproof coating in the receiving box 6 and apply the waterproof coating to the area that needs waterproofing. During the application process, the stirring mechanism 7 runs at a low speed to prevent the waterproof coating in the material tank 4 from settling and to maintain a uniform state. Moreover, the low speed of the stirring mechanism 7 means that almost no air bubbles are generated. After the waterproof coating in the receiving box 6 is used up, the discharge switch 5 is reopened to continue adding waterproof coating to the receiving box 6.

[0028] As one implementation, the material bucket 4 includes a bucket body 41, a bucket lid 42, a lower handle 43 and an upper handle 44. The bucket lid 42 is sealed and installed on the upper side of the bucket body 41. The switching valve 8 is installed on the upper side of the bucket body 41. The upper handle 44 is horizontally fixedly connected to the side of the bucket lid 42. The lower handle 43 is horizontally arranged below the upper handle 44 and connected to the bucket body 41.

[0029] The above settings facilitate the opening and closing of the material hopper 4.

[0030] The material bucket 4 of this application is basically cylindrical, similar to a pressure cooker. After the upper handle 44 and the lower handle 43 are closed, the bucket lid 42 is sealed and installed on the bucket body 41. After the upper handle 44 and the lower handle 43 are separated, the bucket lid 42 is opened and can be removed from the bucket body 41.

[0031] As one implementation, the upper end of the rotating shaft 71 passes through the bucket lid 42 and is rotatably connected to the bucket lid 42. The upper end of the rotating shaft 71 is provided with a transmission groove 711. The blade 72 is fixedly connected to the lower end of the rotating shaft 71. The stirring mechanism 7 also includes a motor 73, a bracket 74 and a slider 75. The motor 73 is located above the rotating shaft 71. The output shaft of the motor 73 is downward and fixedly connected to a transmission key 731 that is compatible with the transmission groove 711. The side of the motor 73 is fixedly connected to the slider 75. The bracket 74 is fixedly connected to the upper side of the trolley 3, and the slider 75 is slidably connected to the side of the bracket 74.

[0032] The above settings facilitate the cleaning of construction equipment.

[0033] The rotating shaft 71 of this application is rotatably and sealingly connected to the bucket lid 42. An upper annular protrusion and a lower annular protrusion are fixedly connected to the rotating shaft 71, respectively abutting against the upper and lower sides of the bucket lid 42, thereby preventing the rotating shaft 71 from moving up and down. The rotating shaft 71 can only rotate around its axis. The transmission groove 711 at the upper end of the rotating shaft 71 is specifically square. Figure 3 When the motor 73 moves downward, the transmission key 731 is embedded in the transmission groove 711. The motor 73 drives the blade 72 to rotate through the rotating shaft 71 to stir the waterproof coating. When it is necessary to clean the construction equipment, slide the slider 75 upward. The slider 75 drives the motor 73 to move upward. After the transmission key 731 leaves the transmission groove 711, the bucket cover 42 can be removed for cleaning.

[0034] As one implementation, the switching valve 8 includes a valve body 81, a valve core 82, and a handle 83. One end of the valve body 81 is provided with a first mounting port 811, and the other end is provided with a second mounting port 812. One end of the valve body 81 is connected to the barrel body 41 through the first mounting port 811. The handle 83 is rotatably connected to the valve body 81 through the second mounting port 812. The upper and lower sides of the valve body 81 are respectively provided with an air inlet 813 and an air outlet 814. The air outlet 814 is connected to the vacuum mechanism 9. The valve core 82 is rotatably connected in the valve body 81. The valve core 82 is provided with an air passage 821. One end of the air passage 821 is connected to the mounting port. In the vacuuming state, the other end of the air passage 821 is connected to the air outlet 814. In the return state, the other end of the air passage 821 is connected to the air inlet 813. Rotating the handle 83 switches the state of the switching valve 8.

[0035] The above settings allow for easy manual switching of the state of switching valve 8.

[0036] The valve body 81 of this application is basically a horizontally arranged cylindrical structure. The first mounting port 811 and the second mounting port 812 are respectively located at both ends of the valve body 81. The air inlet 813 and the air outlet 814 are symmetrically arranged on the upper and lower sides of the valve body 81. The valve core 82 is a cylindrical structure adapted to the valve body 81. The two ends of the valve core 82 are perpendicular to each other. One end extends axially and communicates with the first mounting port 811, and the other end communicates with the air inlet 813 or the air outlet 814. The valve core 82 is manually rotated by the handle 83. When the valve core 82 rotates, one end of the air passage 821 is always connected to the first mounting port 811, while the other end switches between the air inlet 813 and the air outlet 814. When the switching valve 8 is in the suction state, the other end of the air passage 821 is downward connected to the air outlet 814. When the switching valve 8 is in the return state, the other end of the air passage 821 is upward connected to the air inlet 813.

[0037] As one implementation method, the construction equipment also includes a support platform 10, which is fixedly connected to the upper side of the trolley 3, and the material bucket 4 is placed on the upper side of the support platform 10.

[0038] With the above setup, the material bucket 4 is raised by the support platform 10, making it easier for the receiving box 6 to receive the waterproof coating.

[0039] As one implementation, the car 3 includes a base plate 31 and wheels 32 rotatably connected to the underside of the base plate 31.

[0040] The base plate 31 of this application is horizontal and made of rectangular steel plate, used to support the vacuuming mechanism 9, stirring mechanism 7, material bucket 4, support platform 10 and receiving box 6 on the upper side.

[0041] As one implementation method, the construction equipment also includes a battery 11, which is installed on the trolley 3 and is used to power the mixing mechanism 7 and the vacuuming mechanism 9.

[0042] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A building waterproofing construction apparatus, characterized by, It includes a trolley, a material hopper, a discharge switch, and a receiving box; the material hopper is located on the upper side of the trolley and can be opened and closed; the discharge switch is located on the side of the lower end of the material hopper; the receiving box is placed below the discharge switch; The construction equipment also includes a mixing mechanism, a switching valve, and a vacuuming mechanism. The mixing mechanism includes a rotating shaft vertically rotatably connected in the material bucket, and blades fixedly connected to the rotating shaft for mixing the waterproof coating in the material bucket. The switching valve is installed on the side of the upper end of the material bucket and connected to the vacuuming mechanism. The switching valve has a vacuuming state and a return state. In the vacuuming state, the material bucket is connected to the vacuuming mechanism through the switching valve. In the return state, the material bucket is connected to the atmosphere through the switching valve.

2. The building waterproofing construction apparatus according to claim 1, wherein The material bucket includes a bucket body, a bucket lid, a lower handle, and an upper handle. The bucket lid is sealed and installed on the upper side of the bucket body. The switching valve is installed on the upper side of the bucket body. The upper handle is horizontally fixed to the side of the bucket lid. The lower handle is horizontally positioned below the upper handle and connected to the bucket body.

3. The building waterproofing construction apparatus according to claim 2, wherein The upper end of the rotating shaft passes through the bucket lid and is rotatably connected to the bucket lid. A transmission groove is provided at the upper end of the rotating shaft. The blade is fixedly connected to the lower end of the rotating shaft. The stirring mechanism also includes a motor, a bracket, and a slider. The motor is located above the rotating shaft. The output shaft of the motor is axially downward and fixedly connected to a transmission key that matches the transmission groove. The side of the motor is fixedly connected to the slider. The bracket is fixedly connected to the upper side of the trolley. The slider is slidably connected to the side of the bracket.

4. The building waterproofing construction apparatus according to claim 3, wherein The switching valve includes a valve body, a valve core, and a handle. One end of the valve body has a first mounting port, and the other end has a second mounting port. One end of the valve body is connected to the barrel body through the first mounting port, and the handle is rotatably connected to the valve body through the second mounting port. An air inlet and an air outlet are respectively provided on the upper and lower sides of the valve body. The air outlet is connected to a vacuum mechanism. The valve core is rotatably connected to the valve body and has an air passage. One end of the air passage is connected to the mounting port. In the vacuuming state, the other end of the air passage is connected to the air outlet; in the return state, the other end of the air passage is connected to the air inlet. Rotating the handle switches the switching valve state.

5. The building waterproofing construction apparatus according to claim 1, wherein The construction equipment also includes a support platform, which is fixedly connected to the upper side of the trolley, and the material bucket is placed on the upper side of the support platform.

6. The building waterproofing construction apparatus according to claim 1, wherein The trolley includes a base plate and wheels rotatably connected to the underside of the base plate.

7. The building waterproofing construction apparatus according to claim 1, wherein The construction equipment also includes a battery, which is installed on the trolley and is used to power the mixing mechanism and the vacuuming mechanism.